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Efficient Synthesis of Methyl 3-Acetoxypropionate by a Newly Identified Baeyer-Villiger Monooxygenase

机译:新鉴定的Baeyer-Villiger单加氧酶有效合成3-乙酰氧基丙酸甲酯

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Baeyer-Villiger monooxygenases (BVMOs) are an emerging class of promising biocatalysts for the oxidation of ketones to prepare corresponding esters or lactones. Although many BVMOs have been reported, the development of highly efficient enzymes for use in industrial applications is desirable. In this work, we identified a BVMO from Rhodococcus pyridinivorans (BVMORp) with a high affinity toward aliphatic methyl ketones (Km kcat = 2.1?s?1; Km = 1.5?μM). Furthermore, BVMORp exhibited excellent regioselectivity toward most aliphatic ketones, preferentially forming typical (i.e., normal) products. Using the newly identified BVMORp as the catalyst, a high concentration (26.0?g/liter; 200?mM) of methyl levulinate was completely converted to methyl 3-acetoxypropionate after 4?h, with a space-time yield of 5.4?g?liter?1?h?1. Thus, BVMORp is a promising biocatalyst for the synthesis of 3-hydroxypropionate from readily available biobased levulinate to replace the conventional fermentation.IMPORTANCE BVMOs are emerging as a green alternative to traditional oxidants in the BV oxidation of ketones. Although many BVMOs are discovered and used in organic synthesis, few are really applied in industry, especially in the case of aliphatic ketones. Herein, a highly soluble and relatively stable monooxygenase from Rhodococcus pyridinivorans (BVMORp) was identified with high activity and excellent regioselectivity toward most aliphatic ketones. BVMORp possesses unusually high substrate loading during the catalysis of the oxidation of biobased methyl levulinate to 3-hydroxypropionic acid derivatives. This study indicates that the synthesis of 3-hydroxypropionate from readily available biobased levulinate by BVMORp-catalyzed oxidation holds great promise to replace traditional fermentation.
机译:Baeyer-Villiger单加氧酶(BVMOs)是一类新兴的有前途的生物催化剂,可用于酮的氧化以制备相应的酯或内酯。尽管已经报道了许多BVMO,但是期望开发用于工业应用的高效酶。在这项工作中,我们确定了来自吡啶菌(Rhodococcus pyridinivorans)(BVMORp)的BVMO,它对脂族甲基酮具有高亲和力(Km kcat = 2.1?s?1; Km = 1.5?μM)。此外,BVMORp对大多数脂肪族酮显示出极好的区域选择性,优先形成典型的(即,正常的)产物。用新鉴定的BVMORp作为催化剂,在4?h后将高浓度(26.0?g /升; 200?mM)的乙酰丙酸甲酯完全转化为3-乙酰氧基丙酸甲酯,时空产率为5.4?g?。升?1?h?1。因此,BVMORp是一种有前途的生物催化剂,用于从现成的生物基乙酰丙酸酯中合成3-羟基丙酸酯,以取代常规发酵。重要事项BVMOs在酮的BV氧化中正在成为传统氧化剂的绿色替代品。尽管发现了许多BVMO,并将其用于有机合成中,但实际上很少用于工业中,尤其是在脂肪族酮的情况下。在本文中,鉴定出来自吡啶果红球菌(BVMORp)的高度可溶且相对稳定的单加氧酶具有高活性和对大多数脂肪族酮的优异区域选择性。在生物基乙酰丙酸甲酯氧化为3-羟基丙酸衍生物的催化过程中,BVMORp具有异常高的底物负载。这项研究表明,通过BVMORp催化的氧化反应,从易于获得的生物基乙酰丙酸酯中合成3-羟基丙酸酯具有取代传统发酵的巨大希望。

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